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Orbitrap molecular fingerprint of dissolved organic matter in natural waters and its relationship with NDMA formation potential

机译:天然水中溶解有机物的Orbitrap分子指纹图谱及其与NDMA形成潜力的关系

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摘要

N-nitrosodimethylamine (NDMA) is a disinfection byproduct that has been classified as probable human carcinogen by the US Environmental Protection Agency. According to the published literature, natural dissolved organic matter (DOM) can be a source of NDMA precursors in drinking water. New advances in chemical characterization of DOM with high resolution mass spectrometry (HRMS) are allowing researchers to understand these ultra-complex mixtures.The objective of this study is to investigate analytical methodologies based on HRMS to explore NDMA formation from natural waters. To this aim, different waters from drinking water reservoirs in Spain containing NDMA precursors (quantified by means of NDMA formation potential) in concentrations between 17 and 60 ng/L have been studied. The workflow includes DOM solid-phase extraction and Orbitrap analysis with and without chromatographic separation.Here, we show that the molecular composition of DOM across the studied drinking water reservoirs is correlated with the NDMA formation potential. In particular, we found that NDMA formation potential is associated with compounds with high hydrogen saturation (H/C = 1.5), corresponding also to reservoirs with higher background nutrient concentrations and wastewater indicators. Further chromatographic fractionation did not allow better definition of these possible precursors as they were present in different fractions of the chromatogram, suggesting that they were isomerically complex. (C) 2019 Elsevier B.V. All rights reserved.
机译:N-亚硝基二甲胺(NDMA)是一种消毒副产品,被美国环境保护署归类为可能的人类致癌物。根据已公开的文献,天然溶解的有机物(DOM)可能是饮用水中NDMA前体的来源。高分辨率质谱(HRMS)对DOM进行化学表征的新进展使研究人员能够了解这些超复杂混合物。本研究的目的是研究基于HRMS的分析方法,以探索天然水中NDMA的形成。为此,已经研究了西班牙饮用水水库中含有浓度在17至60 ng / L之间的NDMA前体(通过NDMA形成潜力量化)的不同水。工作流程包括DOM固相萃取和带或不带色谱分离的Orbitrap分析。在这里,我们证明了所研究的饮用水水库中DOM的分子组成与NDMA形成潜力相关。特别是,我们发现NDMA的形成潜力与氢饱和度高(H / C> = 1.5)的化合物有关,这也与具有较高背景养分浓度和废水指标的储层相对应。进一步的色谱分离无法更好地定义这些可能的前体,因为它们存在于色谱图的不同馏分中,表明它们是异构体复杂的。 (C)2019 Elsevier B.V.保留所有权利。

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